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首页> 外文期刊>Separation and Purification Technology >Removal of antimonate ions and simultaneous formation of a brandholzite-like compound from magnesium-aluminum oxide
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Removal of antimonate ions and simultaneous formation of a brandholzite-like compound from magnesium-aluminum oxide

机译:从镁铝氧化物中去除锑酸根离子并同时形成类菱沸石的化合物

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摘要

Magnesium-aluminum oxide (Mg-Al oxide), obtained by thermal decomposition of a Mg-Al layered double hydroxide (Mg-Al LDH), was found to remove Sb(OH)g (Sb(V)) in solution because of rehydration, and to combine with Sb(V) to form a brandholzite-like structure. Although the Sb concentration decreased with increasing amounts of Mg-Al oxide, differences in the Mg/Al molar ratio had little effect on this relationship. The removal of Sb(V) in solution by Mg-Al oxide was partially prevented by coexistent anions with high charge densities (SO_4~(2-) and CO_3~(2-)). In this case, Mg-Al oxide likely rehydrates and competitively combines with Sb(V) in solution to construct a brandholzite-like structure or with anions to reconstruct the LDH structure. However, in the case of coexistent anions with low charge densities (Cl~- and OH~-), Mg-Al oxide likely rehydrates and preferentially combines with Sb(V) in solution to construct the brandholzite-like structure. A high concentration of Cl~- and SO_4~(2-) had little effect on the decrease in Sb concentration, whereas a high concentration of CO_3~(2-) had a large effect.
机译:通过将Mg-Al层状双氢氧化物(Mg-Al LDH)热分解而获得的镁铝氧化物(Mg-Al氧化物)由于回水而被发现去除了溶液中的Sb(OH)g(Sb(V)) ,并与Sb(V)结合形成类勃兰石的结构。尽管随着Mg-Al氧化物的增加Sb浓度降低,但是Mg / Al摩尔比的差异对该关系几乎没有影响。高电荷密度的共存阴离子(SO_4〜(2-)和CO_3〜(2-))部分阻止了Mg-Al氧化物去除溶液中Sb(V)。在这种情况下,Mg-Al氧化物可能会再水化并与溶液中的Sb(V)竞争性结合以构建类硼锌矿结构或与阴离子重构LDH结构。但是,在低电荷密度(Cl〜-和OH〜-)共存的阴离子的情况下,Mg-Al氧化物可能会再水化,并优先与Sb(V)结合形成溶液,形成类菱锌矿结构。高浓度的Cl_-和SO_4〜(2-)对Sb的降低影响很小,而高浓度的CO_3〜(2-)具有很大的影响。

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